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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Dual-band absorption characteristics of one-dimensional photonic crystal with graphene-based defect
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Dual-band absorption characteristics of one-dimensional photonic crystal with graphene-based defect

机译:双频吸收的特点一维光子晶体的石墨烯缺陷

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In this article, the dual-band absorption characteristics of one-dimensional photonic crystals with graphene-based defect were theoretically analyzed and numerically simulated using the transfer matrix method. The dependence of dual-band absorption characteristics of the one-dimensional photonic crystal with graphene-based defect on period number of the structure behind the graphene layer, graphene layers, dielectric thickness of defect layer and the incident angle was obtained. Simulation results show that the absorptions with the lights whose wavelength are 699 nm and 1000 nm approximately enhance with the increasing of the layers of graphene. The absorption peaks increase with the decreasing of the dielectric thickness of defect layer and move toward the shorter wavelength. In the transverse electric (TE) mode, the absorption peaks can be regularly tuned by varying the incident angle. The results provide the theoretical basis for the study of graphene absorbers. (C) 2016 Elsevier GmbH. All rights reserved.
机译:在本文中,双频吸收一维光子的特性与石墨烯晶体缺陷理论分析和数值模拟使用传递矩阵法。双频的吸收特性一维光子晶体的石墨烯缺陷的周期数在石墨烯层结构,石墨烯层,层和介质厚度的缺陷入射角。结果表明,吸收的灯其波长699 nm和1000 nm)大约提高的增加石墨烯的层。与介质厚度的减少缺陷层和走向越短波长。吸收峰可以定期调整不同的入射角。石墨烯的研究理论基础吸收器。保留。

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